%{
#include "autoconf.h"
#include <string.h>
#ifdef emacs
#undef static
#endif
#ifdef __GNUC__
#undef alloca
#define alloca __builtin_alloca
#else
#ifdef HAVE_ALLOCA_H
#include <alloca.h>
#else
#ifdef _AIX
#pragma alloca
#else
void *alloca ();
#endif
#endif
#endif
#include <stdio.h>
#include <ctype.h>
#if defined(HAVE_STDLIB_H)
#include <stdlib.h>
#endif
#if defined(vms)
#include <types.h>
#include <time.h>
#else
#include <sys/types.h>
#ifdef HAVE_SYS_TIME_H
#include <sys/time.h>
#endif
#include <time.h>
#ifdef timezone
#undef timezone
#endif
struct my_timeb {
time_t time;
unsigned short millitm;
short timezone;
short dstflag;
};
#endif
#if defined (STDC_HEADERS) || defined (USG)
#include <string.h>
#endif
#ifndef bcopy
#define bcopy(from, to, len) memcpy ((to), (from), (len))
#endif
#define yyparse getdate_yyparse
#define yylex getdate_yylex
#define yyerror getdate_yyerror
static int getdate_yylex (void);
static int getdate_yyerror (char *);
#define EPOCH 1970
#define EPOCH_END 2106
#define HOUR(x) ((time_t)(x) * 60)
#define SECSPERDAY (24L * 60L * 60L)
typedef struct _TABLE {
char *name;
int type;
time_t value;
} TABLE;
typedef enum _DSTMODE {
DSTon, DSToff, DSTmaybe
} DSTMODE;
typedef enum _MERIDIAN {
MERam, MERpm, MER24
} MERIDIAN;
static char *yyInput;
static DSTMODE yyDSTmode;
static time_t yyDayOrdinal;
static time_t yyDayNumber;
static int yyHaveDate;
static int yyHaveDay;
static int yyHaveRel;
static int yyHaveTime;
static int yyHaveZone;
static time_t yyTimezone;
static time_t yyDay;
static time_t yyHour;
static time_t yyMinutes;
static time_t yyMonth;
static time_t yySeconds;
static time_t yyYear;
static MERIDIAN yyMeridian;
static time_t yyRelMonth;
static time_t yyRelSeconds;
%}
%union {
time_t Number;
enum _MERIDIAN Meridian;
}
%token tAGO tID tDST tNEVER
%token <Number> tDAY tDAYZONE tMINUTE_UNIT tMONTH tMONTH_UNIT
%token <Number> tSEC_UNIT tSNUMBER tUNUMBER tZONE
%token <Meridian> tMERIDIAN
%type <Meridian> o_merid
%%
spec :
| spec item
| tNEVER {
yyYear = 1970;
yyMonth = 1;
yyDay = 1;
yyHour = yyMinutes = yySeconds = 0;
yyDSTmode = DSToff;
yyTimezone = 0;
yyHaveDate++;
}
;
item : time {
yyHaveTime++;
}
| zone {
yyHaveZone++;
}
| date {
yyHaveDate++;
}
| day {
yyHaveDay++;
}
| rel {
yyHaveRel++;
}
;
time : tUNUMBER tMERIDIAN {
yyHour = $1;
yyMinutes = 0;
yySeconds = 0;
yyMeridian = $2;
}
| tUNUMBER ':' tUNUMBER o_merid {
yyHour = $1;
yyMinutes = $3;
yySeconds = 0;
yyMeridian = $4;
}
| tUNUMBER ':' tUNUMBER tSNUMBER {
yyHour = $1;
yyMinutes = $3;
yyMeridian = MER24;
yyDSTmode = DSToff;
yyTimezone = - ($4 % 100 + ($4 / 100) * 60);
}
| tUNUMBER ':' tUNUMBER ':' tUNUMBER o_merid {
yyHour = $1;
yyMinutes = $3;
yySeconds = $5;
yyMeridian = $6;
}
| tUNUMBER ':' tUNUMBER ':' tUNUMBER tSNUMBER {
yyHour = $1;
yyMinutes = $3;
yySeconds = $5;
yyMeridian = MER24;
yyDSTmode = DSToff;
yyTimezone = - ($6 % 100 + ($6 / 100) * 60);
}
;
zone : tZONE {
yyTimezone = $1;
yyDSTmode = DSToff;
}
| tDAYZONE {
yyTimezone = $1;
yyDSTmode = DSTon;
}
|
tZONE tDST {
yyTimezone = $1;
yyDSTmode = DSTon;
}
;
day : tDAY {
yyDayOrdinal = 1;
yyDayNumber = $1;
}
| tDAY ',' {
yyDayOrdinal = 1;
yyDayNumber = $1;
}
| tUNUMBER tDAY {
yyDayOrdinal = $1;
yyDayNumber = $2;
}
;
date : tUNUMBER '/' tUNUMBER {
yyMonth = $1;
yyDay = $3;
}
| tUNUMBER '/' tUNUMBER '/' tUNUMBER {
yyMonth = $1;
yyDay = $3;
yyYear = $5;
}
| tUNUMBER tSNUMBER tSNUMBER {
yyYear = $1;
yyMonth = -$2;
yyDay = -$3;
}
| tUNUMBER tMONTH tSNUMBER {
yyDay = $1;
yyMonth = $2;
yyYear = -$3;
}
| tMONTH tUNUMBER {
yyMonth = $1;
yyDay = $2;
}
| tMONTH tUNUMBER ',' tUNUMBER {
yyMonth = $1;
yyDay = $2;
yyYear = $4;
}
| tUNUMBER tMONTH {
yyMonth = $2;
yyDay = $1;
}
| tUNUMBER tMONTH tUNUMBER {
yyMonth = $2;
yyDay = $1;
yyYear = $3;
}
;
rel : relunit tAGO {
yyRelSeconds = -yyRelSeconds;
yyRelMonth = -yyRelMonth;
}
| relunit
;
relunit : tUNUMBER tMINUTE_UNIT {
yyRelSeconds += $1 * $2 * 60L;
}
| tSNUMBER tMINUTE_UNIT {
yyRelSeconds += $1 * $2 * 60L;
}
| tMINUTE_UNIT {
yyRelSeconds += $1 * 60L;
}
| tSNUMBER tSEC_UNIT {
yyRelSeconds += $1;
}
| tUNUMBER tSEC_UNIT {
yyRelSeconds += $1;
}
| tSEC_UNIT {
yyRelSeconds++;
}
| tSNUMBER tMONTH_UNIT {
yyRelMonth += $1 * $2;
}
| tUNUMBER tMONTH_UNIT {
yyRelMonth += $1 * $2;
}
| tMONTH_UNIT {
yyRelMonth += $1;
}
;
o_merid : {
$$ = MER24;
}
| tMERIDIAN {
$$ = $1;
}
;
%%
static TABLE const MonthDayTable[] = {
{ "january", tMONTH, 1 },
{ "february", tMONTH, 2 },
{ "march", tMONTH, 3 },
{ "april", tMONTH, 4 },
{ "may", tMONTH, 5 },
{ "june", tMONTH, 6 },
{ "july", tMONTH, 7 },
{ "august", tMONTH, 8 },
{ "september", tMONTH, 9 },
{ "sept", tMONTH, 9 },
{ "october", tMONTH, 10 },
{ "november", tMONTH, 11 },
{ "december", tMONTH, 12 },
{ "sunday", tDAY, 0 },
{ "monday", tDAY, 1 },
{ "tuesday", tDAY, 2 },
{ "tues", tDAY, 2 },
{ "wednesday", tDAY, 3 },
{ "wednes", tDAY, 3 },
{ "thursday", tDAY, 4 },
{ "thur", tDAY, 4 },
{ "thurs", tDAY, 4 },
{ "friday", tDAY, 5 },
{ "saturday", tDAY, 6 },
{ NULL }
};
static TABLE const UnitsTable[] = {
{ "year", tMONTH_UNIT, 12 },
{ "month", tMONTH_UNIT, 1 },
{ "fortnight", tMINUTE_UNIT, 14 * 24 * 60 },
{ "week", tMINUTE_UNIT, 7 * 24 * 60 },
{ "day", tMINUTE_UNIT, 1 * 24 * 60 },
{ "hour", tMINUTE_UNIT, 60 },
{ "minute", tMINUTE_UNIT, 1 },
{ "min", tMINUTE_UNIT, 1 },
{ "second", tSEC_UNIT, 1 },
{ "sec", tSEC_UNIT, 1 },
{ NULL }
};
static TABLE const OtherTable[] = {
{ "tomorrow", tMINUTE_UNIT, 1 * 24 * 60 },
{ "yesterday", tMINUTE_UNIT, -1 * 24 * 60 },
{ "today", tMINUTE_UNIT, 0 },
{ "now", tMINUTE_UNIT, 0 },
{ "last", tUNUMBER, -1 },
{ "this", tMINUTE_UNIT, 0 },
{ "next", tUNUMBER, 2 },
{ "first", tUNUMBER, 1 },
{ "third", tUNUMBER, 3 },
{ "fourth", tUNUMBER, 4 },
{ "fifth", tUNUMBER, 5 },
{ "sixth", tUNUMBER, 6 },
{ "seventh", tUNUMBER, 7 },
{ "eighth", tUNUMBER, 8 },
{ "ninth", tUNUMBER, 9 },
{ "tenth", tUNUMBER, 10 },
{ "eleventh", tUNUMBER, 11 },
{ "twelfth", tUNUMBER, 12 },
{ "ago", tAGO, 1 },
{ "never", tNEVER, 0 },
{ NULL }
};
static TABLE const TimezoneTable[] = {
{ "gmt", tZONE, HOUR( 0) },
{ "ut", tZONE, HOUR( 0) },
{ "utc", tZONE, HOUR( 0) },
{ "wet", tZONE, HOUR( 0) },
{ "bst", tDAYZONE, HOUR( 0) },
{ "wat", tZONE, HOUR( 1) },
{ "at", tZONE, HOUR( 2) },
#if 0
{ "bst", tZONE, HOUR( 3) },
{ "gst", tZONE, HOUR( 3) },
#endif
#if 0
{ "nft", tZONE, HOUR(3.5) },
{ "nst", tZONE, HOUR(3.5) },
{ "ndt", tDAYZONE, HOUR(3.5) },
#endif
{ "ast", tZONE, HOUR( 4) },
{ "adt", tDAYZONE, HOUR( 4) },
{ "est", tZONE, HOUR( 5) },
{ "edt", tDAYZONE, HOUR( 5) },
{ "cst", tZONE, HOUR( 6) },
{ "cdt", tDAYZONE, HOUR( 6) },
{ "mst", tZONE, HOUR( 7) },
{ "mdt", tDAYZONE, HOUR( 7) },
{ "pst", tZONE, HOUR( 8) },
{ "pdt", tDAYZONE, HOUR( 8) },
{ "yst", tZONE, HOUR( 9) },
{ "ydt", tDAYZONE, HOUR( 9) },
{ "hst", tZONE, HOUR(10) },
{ "hdt", tDAYZONE, HOUR(10) },
{ "cat", tZONE, HOUR(10) },
{ "ahst", tZONE, HOUR(10) },
{ "nt", tZONE, HOUR(11) },
{ "idlw", tZONE, HOUR(12) },
{ "cet", tZONE, -HOUR(1) },
{ "met", tZONE, -HOUR(1) },
{ "mewt", tZONE, -HOUR(1) },
{ "mest", tDAYZONE, -HOUR(1) },
{ "swt", tZONE, -HOUR(1) },
{ "sst", tDAYZONE, -HOUR(1) },
{ "fwt", tZONE, -HOUR(1) },
{ "fst", tDAYZONE, -HOUR(1) },
{ "eet", tZONE, -HOUR(2) },
{ "bt", tZONE, -HOUR(3) },
#if 0
{ "it", tZONE, -HOUR(3.5) },
#endif
{ "zp4", tZONE, -HOUR(4) },
{ "zp5", tZONE, -HOUR(5) },
#if 0
{ "ist", tZONE, -HOUR(5.5) },
#endif
{ "zp6", tZONE, -HOUR(6) },
#if 0
{ "nst", tZONE, -HOUR(6.5) },
{ "sst", tZONE, -HOUR(7) },
#endif
{ "wast", tZONE, -HOUR(7) },
{ "wadt", tDAYZONE, -HOUR(7) },
#if 0
{ "jt", tZONE, -HOUR(7.5) },
#endif
{ "cct", tZONE, -HOUR(8) },
{ "jst", tZONE, -HOUR(9) },
{ "kst", tZONE, -HOUR(9) },
#if 0
{ "cast", tZONE, -HOUR(9.5) },
{ "cadt", tDAYZONE, -HOUR(9.5) },
#endif
{ "east", tZONE, -HOUR(10) },
{ "eadt", tDAYZONE, -HOUR(10) },
{ "gst", tZONE, -HOUR(10) },
{ "kdt", tZONE, -HOUR(10) },
{ "nzt", tZONE, -HOUR(12) },
{ "nzst", tZONE, -HOUR(12) },
{ "nzdt", tDAYZONE, -HOUR(12) },
{ "idle", tZONE, -HOUR(12) },
{ NULL }
};
static int
yyerror(char *s)
{
return 0;
}
static time_t
ToSeconds(time_t Hours, time_t Minutes, time_t Seconds, MERIDIAN Meridian)
{
if (Minutes < 0 || Minutes > 59 || Seconds < 0 || Seconds > 59)
return -1;
switch (Meridian) {
case MER24:
if (Hours < 0 || Hours > 23)
return -1;
return (Hours * 60L + Minutes) * 60L + Seconds;
case MERam:
if (Hours < 1 || Hours > 12)
return -1;
return (Hours * 60L + Minutes) * 60L + Seconds;
case MERpm:
if (Hours < 1 || Hours > 12)
return -1;
return ((Hours + 12) * 60L + Minutes) * 60L + Seconds;
default:
abort ();
}
}
static time_t
Convert(time_t Month, time_t Day, time_t Year, time_t Hours, time_t Minutes,
time_t Seconds, MERIDIAN Meridian, DSTMODE DSTmode)
{
static int DaysInMonth[12] = {
31, 0, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31
};
time_t tod;
time_t Julian;
int i;
struct tm *tm;
if (Year < 0)
Year = -Year;
if (Year < 1900)
Year += 1900;
DaysInMonth[1] = Year % 4 == 0 && (Year % 100 != 0 || Year % 400 == 0)
? 29 : 28;
if (Year < EPOCH
|| Year > EPOCH_END
|| Month < 1 || Month > 12
|| Day < 1 || Day > DaysInMonth[(int)--Month])
return -1;
for (Julian = Day - 1, i = 0; i < Month; i++)
Julian += DaysInMonth[i];
for (i = EPOCH; i < Year; i++)
Julian += 365 + ((i % 4 == 0) && ((Year % 100 != 0) ||
(Year % 400 == 0)));
Julian *= SECSPERDAY;
Julian += yyTimezone * 60L;
if ((tod = ToSeconds(Hours, Minutes, Seconds, Meridian)) < 0)
return -1;
Julian += tod;
if (DSTmode == DSTon)
Julian -= 60 * 60;
else if (DSTmode == DSTmaybe) {
tm = localtime(&Julian);
if (tm == NULL)
return -1;
else if (tm->tm_isdst)
Julian -= 60 * 60;
}
return Julian;
}
static time_t
DSTcorrect(time_t Start, time_t Future, int *error)
{
time_t StartDay;
time_t FutureDay;
struct tm *tm;
tm = localtime(&Start);
if (tm == NULL) {
*error = 1;
return -1;
}
StartDay = (tm->tm_hour + 1) % 24;
tm = localtime(&Future);
if (tm == NULL) {
*error = 1;
return -1;
}
FutureDay = (tm->tm_hour + 1) % 24;
*error = 0;
return (Future - Start) + (StartDay - FutureDay) * 60L * 60L;
}
static time_t
RelativeDate(time_t Start, time_t DayOrdinal, time_t DayNumber, int *error)
{
struct tm *tm;
time_t now;
now = Start;
tm = localtime(&now);
if (tm == NULL) {
*error = 1;
return -1;
}
now += SECSPERDAY * ((DayNumber - tm->tm_wday + 7) % 7);
now += 7 * SECSPERDAY * (DayOrdinal <= 0 ? DayOrdinal : DayOrdinal - 1);
return DSTcorrect(Start, now, error);
}
static time_t
RelativeMonth(time_t Start, time_t RelMonth)
{
struct tm *tm;
time_t Month;
time_t Year;
time_t ret;
int error;
if (RelMonth == 0)
return 0;
tm = localtime(&Start);
if (tm == NULL)
return -1;
Month = 12 * tm->tm_year + tm->tm_mon + RelMonth;
Year = Month / 12;
Month = Month % 12 + 1;
ret = Convert(Month, (time_t)tm->tm_mday, Year,
(time_t)tm->tm_hour, (time_t)tm->tm_min, (time_t)tm->tm_sec,
MER24, DSTmaybe);
if (ret == -1)
return ret;
ret = DSTcorrect(Start, ret, &error);
if (error)
return -1;
return ret;
}
static int
LookupWord(char *buff)
{
char *p;
char *q;
const TABLE *tp;
int i;
int abbrev;
for (p = buff; *p; p++)
if (isupper((int) *p))
*p = tolower((int) *p);
if (strcmp(buff, "am") == 0 || strcmp(buff, "a.m.") == 0) {
yylval.Meridian = MERam;
return tMERIDIAN;
}
if (strcmp(buff, "pm") == 0 || strcmp(buff, "p.m.") == 0) {
yylval.Meridian = MERpm;
return tMERIDIAN;
}
if (strlen(buff) == 3)
abbrev = 1;
else if (strlen(buff) == 4 && buff[3] == '.') {
abbrev = 1;
buff[3] = '\0';
}
else
abbrev = 0;
for (tp = MonthDayTable; tp->name; tp++) {
if (abbrev) {
if (strncmp(buff, tp->name, 3) == 0) {
yylval.Number = tp->value;
return tp->type;
}
}
else if (strcmp(buff, tp->name) == 0) {
yylval.Number = tp->value;
return tp->type;
}
}
for (tp = TimezoneTable; tp->name; tp++)
if (strcmp(buff, tp->name) == 0) {
yylval.Number = tp->value;
return tp->type;
}
if (strcmp(buff, "dst") == 0)
return tDST;
for (tp = UnitsTable; tp->name; tp++)
if (strcmp(buff, tp->name) == 0) {
yylval.Number = tp->value;
return tp->type;
}
i = strlen(buff) - 1;
if (buff[i] == 's') {
buff[i] = '\0';
for (tp = UnitsTable; tp->name; tp++)
if (strcmp(buff, tp->name) == 0) {
yylval.Number = tp->value;
return tp->type;
}
buff[i] = 's';
}
for (tp = OtherTable; tp->name; tp++)
if (strcmp(buff, tp->name) == 0) {
yylval.Number = tp->value;
return tp->type;
}
for (i = 0, p = q = buff; *q; q++)
if (*q != '.')
*p++ = *q;
else
i++;
*p = '\0';
if (i)
for (tp = TimezoneTable; tp->name; tp++)
if (strcmp(buff, tp->name) == 0) {
yylval.Number = tp->value;
return tp->type;
}
return tID;
}
static int
yylex(void)
{
char c;
char *p;
char buff[20];
int Count;
int sign;
for ( ; ; ) {
while (isspace((int) *yyInput))
yyInput++;
c = *yyInput;
if (isdigit((int) c) || c == '-' || c == '+') {
if (c == '-' || c == '+') {
sign = c == '-' ? -1 : 1;
if (!isdigit((int) (*++yyInput)))
continue;
}
else
sign = 0;
for (yylval.Number = 0; isdigit((int) (c = *yyInput++)); )
yylval.Number = 10 * yylval.Number + c - '0';
yyInput--;
if (sign < 0)
yylval.Number = -yylval.Number;
return sign ? tSNUMBER : tUNUMBER;
}
if (isalpha((int) c)) {
for (p = buff; isalpha((int) (c = *yyInput++)) || c == '.'; )
if (p < &buff[sizeof buff - 1])
*p++ = c;
*p = '\0';
yyInput--;
return LookupWord(buff);
}
if (c != '(')
return *yyInput++;
Count = 0;
do {
c = *yyInput++;
if (c == '\0')
return c;
if (c == '(')
Count++;
else if (c == ')')
Count--;
} while (Count > 0);
}
}
#define TM_YEAR_ORIGIN 1900
static time_t
difftm(struct tm *a, struct tm *b)
{
int ay = a->tm_year + (TM_YEAR_ORIGIN - 1);
int by = b->tm_year + (TM_YEAR_ORIGIN - 1);
return
(
(
(
a->tm_yday - b->tm_yday
+ ((ay >> 2) - (by >> 2))
- (ay/100 - by/100)
+ ((ay/100 >> 2) - (by/100 >> 2))
+ (time_t)(ay-by) * 365
)*24 + (a->tm_hour - b->tm_hour)
)*60 + (a->tm_min - b->tm_min)
)*60 + (a->tm_sec - b->tm_sec);
}
#include <krb5.h>
int yyparse(void);
time_t get_date_rel(char *, time_t);
time_t get_date(char *);
time_t
get_date_rel(char *p, time_t nowtime)
{
struct my_timeb *now = NULL;
struct tm *tm, gmt;
struct my_timeb ftz;
time_t Start;
time_t tod;
time_t delta;
int error;
yyInput = p;
if (now == NULL) {
now = &ftz;
ftz.time = nowtime;
if (! (tm = gmtime (&ftz.time)))
return -1;
gmt = *tm;
tm = localtime(&ftz.time);
if (tm == NULL)
return -1;
ftz.timezone = difftm (&gmt, tm) / 60;
}
tm = localtime(&now->time);
if (tm == NULL)
return -1;
yyYear = tm->tm_year;
yyMonth = tm->tm_mon + 1;
yyDay = tm->tm_mday;
yyTimezone = now->timezone;
yyDSTmode = DSTmaybe;
yyHour = 0;
yyMinutes = 0;
yySeconds = 0;
yyMeridian = MER24;
yyRelSeconds = 0;
yyRelMonth = 0;
yyHaveDate = 0;
yyHaveDay = 0;
yyHaveRel = 0;
yyHaveTime = 0;
yyHaveZone = 0;
if (yyparse()
|| yyHaveTime > 1 || yyHaveZone > 1 || yyHaveDate > 1 || yyHaveDay > 1)
return -1;
if (yyHaveDate || yyHaveTime || yyHaveDay) {
Start = Convert(yyMonth, yyDay, yyYear, yyHour, yyMinutes, yySeconds,
yyMeridian, yyDSTmode);
if (Start < 0)
return -1;
}
else {
Start = now->time;
if (!yyHaveRel)
Start -= ((tm->tm_hour * 60L + tm->tm_min) * 60L) + tm->tm_sec;
}
Start += yyRelSeconds;
delta = RelativeMonth(Start, yyRelMonth);
if (delta == (time_t) -1)
return -1;
Start += delta;
if (yyHaveDay && !yyHaveDate) {
tod = RelativeDate(Start, yyDayOrdinal, yyDayNumber, &error);
if (error != 0)
return -1;
Start += tod;
}
return Start == -1 ? 0 : Start;
}
time_t
get_date(char *p)
{
return get_date_rel(p, time(NULL));
}
#if defined(TEST)
main(int ac, char *av[])
{
char buff[128];
time_t d;
(void)printf("Enter date, or blank line to exit.\n\t> ");
(void)fflush(stdout);
while (gets(buff) && buff[0]) {
d = get_date(buff);
if (d == -1)
(void)printf("Bad format - couldn't convert.\n");
else
(void)printf("%s", ctime(&d));
(void)printf("\t> ");
(void)fflush(stdout);
}
exit(0);
}
#endif